物理
氘
原子物理学
中子
加速度
能量(信号处理)
强度(物理)
焊剂(冶金)
发电机(电路理论)
激光器
中子通量
休克(循环)
中子发生器
核物理学
中子源
光学
材料科学
量子力学
功率(物理)
冶金
内科学
医学
作者
Y. L. Yao,Shukai He,Zhu Lei,T. Ye,Y. Xie,Zhigang Deng,Bo Cui,Wei Qi,Lei Yang,Shaoping Zhu,X. T. He,Weimin Zhou,B. Qiao
标识
DOI:10.1103/physrevlett.131.025101
摘要
A novel compact high-flux neutron generator with a pitcher-catcher configuration based on laser-driven collisionless shock acceleration (CSA) is proposed and experimentally verified. Different from those that previously relied on target normal sheath acceleration (TNSA), CSA in nature favors not only acceleration of deuterons (instead of hydrogen contaminants) but also increasing of the number of deuterons in the high-energy range, therefore having great advantages for production of high-flux neutron source. The proof-of-principle experiment has observed a typical CSA plateau feature from 2 to 6 MeV in deuteron energy spectrum and measured a forward neutron flux with yield $6.6\ifmmode\times\else\texttimes\fi{}{10}^{7}\text{ }\text{ }\mathrm{n}/\mathrm{sr}$ from the LiF catcher target, an order of magnitude higher than the compared TNSA case, where the laser intensity is ${10}^{19}\text{ }\text{ }\mathrm{W}/{\mathrm{cm}}^{2}$. Self-consistent simulations have reproduced the experimental results and predicted that a high-flux forward neutron source with yield up to $5\ifmmode\times\else\texttimes\fi{}{10}^{10}\text{ }\text{ }\mathrm{n}/\mathrm{sr}$ can be obtained when laser intensity increases to ${10}^{21}\text{ }\text{ }\mathrm{W}/{\mathrm{cm}}^{2}$ under the same laser energy.
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